Near‐Infrared Mechanoluminescence from Cr3+‐Doped Spinel Nanoparticles for Potential Oral Diseases Detection

Author:

Shao Peishan1,Chen Dongdan1,Lun Zhenjie1,Wu Yafen2,Chen Zhicong1,Xiao Yao1,Xiong Puxian13ORCID,Wang Shouping2,Viana Bruno4,Im Won Bin5,Yang Zhongmin1

Affiliation:

1. State Key Laboratory of Luminescent Materials and Devices School of Materials Science and Engineering School of Physics and Optoelectronics Guangdong Provincial Key Laboratory of Fiber Laser Materials and Applied Techniques Guangdong Engineering Technology Research and Development Center of Special Optical Fiber Materials and Devices South China University of Technology Guangzhou 510641 China

2. Department of Anesthesiology Third Affiliated Hospital of Guangzhou Medical University Guangzhou 510000 China

3. Department of Electrical and Electronic Engineering The University of Hong Kong Hong Kong 999077 China

4. PSL Research University Chimie ParisTech IRCP CNRS Paris 75005 France

5. Division of Materials Science and Engineering Hanyang University Seongdong‐gu Seoul 04763 Republic of Korea

Abstract

AbstractMechanoluminescence (ML) phosphors have found various promising utilizations such as in non‐destructive stress sensing, anti‐counterfeiting, and bio stress imaging. However, the reported NIR MLs have predominantly been limited to bulky particle size and weak ML intensity, hindering the further practical applications. For this regard, a nano‐sized ZnGa2O4: Cr3+ NIR ML phosphor is synthesized by hydrothermal method. By improving the synthesis method and regulating the chemical composition, the NIR ML (600–1000 nm) intensity of such nano‐materials has been further enhanced about four times. The reasons for the ML performance difference between micro‐/nano‐ sized phosphors also have been preliminarily analyzed. Additionally, this work probes into the ML mechanism deeply in traps’ aspect from band structure and defect formation energy, which can supply significant references for a new approach to develop efficient NIR ML nanoparticles. Finally, due to excellent tissue penetration capability, nano‐sized ZnGa2O4:Cr3+ NIR ML phosphor shows great potential applications in biomedical fields such as for the detection of clinical oral diseases.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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